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High-concentration LiPF6/sulfone electrolytes: structure, transport properties, and battery application.

Authors :
Ugata, Yosuke
Chen, Yichuan
Miyazaki, Shuhei
Sasagawa, Shohei
Ueno, Kazuhide
Watanabe, Masayoshi
Dokko, Kaoru
Source :
Physical Chemistry Chemical Physics (PCCP); 11/21/2023, Vol. 25 Issue 43, p29566-29575, 10p
Publication Year :
2023

Abstract

Non-flammable and oxidatively stable sulfones are promising electrolyte solvents for thermally stable high-voltage Li batteries. In addition, sulfolane-based high-concentration electrolytes (HCEs) show high Li<superscript>+</superscript> ion transference numbers. However, LiPF<subscript>6</subscript> has not yet been investigated as the main salt in sulfone-based HCEs for Li batteries. In this study, we investigated the phase behaviors, solvate structures, and transport properties of binary and ternary mixtures of LiPF<subscript>6</subscript> and the following sulfone solvents: sulfolane (SL), dimethyl sulfone (DMS), ethyl methyl sulfone (EMS), and 3-methyl sulfolane (MSL). The stable crystalline solvates Li(SL)<subscript>4</subscript>PF<subscript>6</subscript> and Li(DMS)<subscript>2.5</subscript>PF<subscript>6</subscript> with high melting points were formed in the LiPF<subscript>6</subscript>/SL and LiPF<subscript>6</subscript>/DMS mixtures, respectively. In contrast, LiPF<subscript>6</subscript>/EMS, LiPF<subscript>6</subscript>/MSL, and LiPF<subscript>6</subscript>/SL/another sulfone mixtures remained liquids over a wide temperature range. Raman spectroscopy revealed that SL and another sulfone are competitively coordinated to Li<superscript>+</superscript> ions to dissociate LiPF<subscript>6</subscript> in the ternary mixtures. Although the ionic conductivity decreased with increasing LiPF<subscript>6</subscript> concentration due to an increase in viscosity, Li<superscript>+</superscript> ions diffused faster than PF<subscript>6</subscript><superscript>−</superscript>via exchanging ligands in the HCE [LiPF<subscript>6</subscript>]/[SL]/[DMS] = 1/2/2, resulting in a higher Li ion transference number than that in conventional Li battery electrolytes. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14639076
Volume :
25
Issue :
43
Database :
Complementary Index
Journal :
Physical Chemistry Chemical Physics (PCCP)
Publication Type :
Academic Journal
Accession number :
173494791
Full Text :
https://doi.org/10.1039/d3cp04561g